模拟气候变暖对蜜蜂亚种Apis mellifera ligica和A.mellifera sinisxinyuan菌落小气候条件和肠道细菌丰度的影响

IF 0.7 4区 农林科学 Q4 ENTOMOLOGY
K. A. S. Coulibaly, M. Majeed, S. Sayed, Kolo Yeo
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引用次数: 1

摘要

摘要包括昆虫在内的低温生物极易受到气候变暖的影响,这不仅影响了它们的生物学、生态学和生理学,还影响了它们共生的肠道微生物群。本研究确定了环境(对照)和模拟温暖(加热)气候条件对两个意大利蜜蜂亚种(即意大利蜜蜂和意大利蜜蜂)巢小气候和肠道细菌丰度的影响。两个亚种在加热处理下的窝温和相对湿度均与对照处理显著不同(p≤0.001)。定量PCR数据显示,在加热处理过程中,川芎和四新园香榧幼虫的肠道细菌丰度(16S rRNA基因拷贝数)显著高于对照(P≤0.05),分别是对照的1.73和5.32倍。虽然在对照处理期间,意大利香蜂草(1.67×107拷贝g−1 fw)和四辛园香蜂草幼虫(1.7×107拷贝g−1 fw)的肠道细菌丰度相似,但在加热处理期间,四辛园香蜂草幼虫的肠道细菌丰富度是意大利香蜂花的三倍。同样,在加热处理过程中,新源蜜蜂的细菌丰度显著高于对照。这些发现阐明了气候变暖可能会显著影响蜜蜂群体的小气候和肠道细菌丰度。然而,还需要进一步的研究来更好地了解在气候变暖的情况下,肠道微生物群落如何影响宿主蜜蜂的学习、生理和行为机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulated Climate Warming Influenced Colony Microclimatic Conditions and Gut Bacterial Abundance of Honeybee Subspecies Apis mellifera ligustica and A. mellifera sinisxinyuan
Abstract Ectothermic organisms including insects are highly vulnerable to climate warming which not only influences their biology, ecology and physiology but also affects their symbiotic gut microbiota. This study determined the impact of ambient (control) and simulated warmer (heating) climatic conditions on the microclimate of brood nest and gut bacterial abundance of two Apis mellifera subspecies i.e. A. mellifera ligustica and A. mellifera sinisxinyuan. For both subspecies, brood nest temperature and relative humidity under the heating treatment were significantly different (p≤0.001) than those under the control treatment. Quantitative PCR data revealed that the abundance of gut bacteria (16S rRNA gene copy numbers) of A. mellifera ligustica and A. mellifera sinisxinyuan larvae was significantly higher (P≤0.05), 1.73 and 5.32 fold higher respectively, during the heating treatment than those in control conditions. Although gut bacterial abundance of A. mellifera ligustica (1.67 × 107 copies g−1 fw) and A. mellifera sinisxinyuan (1.7 × 107 copies g−1 fw) larvae was similar during the control treatment, A. mellifera sinisxinyuan larvae exhibited three times greater gut bacterial abundance than A. mellifera ligustica during the heating treatment. Similarly, adult A. mellifera sinisxinyuan bees harboured significantly greater bacterial abundance during the heating treatment than control. These findings elucidate that climate warming may significantly affect the honeybee colony microclimate and their gut bacterial abundance. However, further studies are needed to better understand how gut microbial community may influence the learning, physiological and behavioural mechanisms of the host bees in a climate warming scenario.
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
9
审稿时长
>12 weeks
期刊介绍: The Journal of Apicultural Science is a scientific, English-language journal that publishes both original research articles and review papers covering all aspects of the life of bees (superfamily Apoidea) and broadly defined apiculture. The main subject areas include: -bee biology- bee genetics- bee breeding- pathology and toxicology- pollination and bee botany- bee products- management, technologies, and economy- solitary bees and bumblebees
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